core,common: Give memory layout setting an enum
Allows for 6GB and 8GB layouts to be selected.
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@ -153,8 +153,12 @@ struct Values {
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// Core
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SwitchableSetting<bool> use_multi_core{linkage, true, "use_multi_core", Category::Core};
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SwitchableSetting<bool> use_unsafe_extended_memory_layout{
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linkage, false, "use_unsafe_extended_memory_layout", Category::Core};
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SwitchableSetting<MemoryLayout, true> memory_layout_mode{linkage,
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MemoryLayout::Memory_4Gb,
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MemoryLayout::Memory_4Gb,
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MemoryLayout::Memory_8Gb,
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"memory_layout_mode",
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Category::Core};
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SwitchableSetting<bool> use_speed_limit{
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linkage, true, "use_speed_limit", Category::Core, Specialization::Paired, false, true};
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SwitchableSetting<u16, true> speed_limit{linkage,
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@ -131,6 +131,8 @@ ENUM(GpuAccuracy, Normal, High, Extreme);
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ENUM(CpuAccuracy, Auto, Accurate, Unsafe, Paranoid);
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ENUM(MemoryLayout, Memory_4Gb, Memory_6Gb, Memory_8Gb);
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ENUM(FullscreenMode, Borderless, Exclusive);
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ENUM(NvdecEmulation, Off, Cpu, Gpu);
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@ -12,6 +12,7 @@
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#include "common/logging/log.h"
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#include "common/microprofile.h"
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#include "common/settings.h"
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#include "common/settings_enums.h"
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#include "common/string_util.h"
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#include "core/arm/exclusive_monitor.h"
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#include "core/core.h"
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@ -140,7 +141,8 @@ struct System::Impl {
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device_memory = std::make_unique<Core::DeviceMemory>();
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is_multicore = Settings::values.use_multi_core.GetValue();
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extended_memory_layout = Settings::values.use_unsafe_extended_memory_layout.GetValue();
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extended_memory_layout =
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Settings::values.memory_layout_mode.GetValue() != Settings::MemoryLayout::Memory_4Gb;
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core_timing.SetMulticore(is_multicore);
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core_timing.Initialize([&system]() { system.RegisterHostThread(); });
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@ -168,7 +170,8 @@ struct System::Impl {
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void ReinitializeIfNecessary(System& system) {
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const bool must_reinitialize =
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is_multicore != Settings::values.use_multi_core.GetValue() ||
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extended_memory_layout != Settings::values.use_unsafe_extended_memory_layout.GetValue();
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extended_memory_layout != (Settings::values.memory_layout_mode.GetValue() !=
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Settings::MemoryLayout::Memory_4Gb);
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if (!must_reinitialize) {
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return;
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@ -177,7 +180,8 @@ struct System::Impl {
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LOG_DEBUG(Kernel, "Re-initializing");
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is_multicore = Settings::values.use_multi_core.GetValue();
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extended_memory_layout = Settings::values.use_unsafe_extended_memory_layout.GetValue();
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extended_memory_layout =
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Settings::values.memory_layout_mode.GetValue() != Settings::MemoryLayout::Memory_4Gb;
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Initialize(system);
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}
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@ -35,13 +35,25 @@ namespace {
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using namespace Common::Literals;
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u32 GetMemorySizeForInit() {
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return Settings::values.use_unsafe_extended_memory_layout ? Smc::MemorySize_8GB
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: Smc::MemorySize_4GB;
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switch (Settings::values.memory_layout_mode.GetValue()) {
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case Settings::MemoryLayout::Memory_4Gb:
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return Smc::MemorySize_4GB;
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case Settings::MemoryLayout::Memory_6Gb:
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return Smc::MemorySize_6GB;
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case Settings::MemoryLayout::Memory_8Gb:
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return Smc::MemorySize_8GB;
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}
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}
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Smc::MemoryArrangement GetMemoryArrangeForInit() {
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return Settings::values.use_unsafe_extended_memory_layout ? Smc::MemoryArrangement_8GB
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: Smc::MemoryArrangement_4GB;
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switch (Settings::values.memory_layout_mode.GetValue()) {
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case Settings::MemoryLayout::Memory_4Gb:
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return Smc::MemoryArrangement_4GB;
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case Settings::MemoryLayout::Memory_6Gb:
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return Smc::MemoryArrangement_6GB;
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case Settings::MemoryLayout::Memory_8Gb:
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return Smc::MemoryArrangement_8GB;
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}
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}
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} // namespace
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